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An Experimental Study Examining the Size Effect on the Compressive Dynamic Performance of Nuclear Power Containment Concrete

机译:一种实验研究检查核电站混凝土压缩动态性能的尺寸影响

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To study the size effect of nuclear power containment concrete (NPCC) under compressive dynamic performance, the cube concrete specimens with 3 different cube sizes were measured at 10 different loading strain rates using a hydraulic servo, and the failure mode and compressive strength of NPCC were compared and analyzed under different loading conditions. Based on the comparative analysis of experiment results, the following conclusions can be drawn: the effect of loading strain rate has caused NPCC to develop from static strain rate, mainly cement cementitious layer damage and uniform distribution of cracks, to dynamic strain rate, where there are partial coarse aggregate failures and oblique cracks as the main crack distribution. Due to the size effect, the integrity of large-scale NPCC specimen after compression failure is relatively high. With the increase of loading strain rate and decrease of cube size, compressive strength of NPCC is gradually increased, and, with the increase of loading strain rate, the size effect on the mechanical properties of NPCC becomes more significant. Moreover, this paper quantitatively analyzes the influence of the coupling effect of strain rate and size effect on the compressive strength of NPCC, and its mechanism is discussed in depth. The research results are of great significance to the safety of nuclear power concrete containment.
机译:为研究核电站混凝土(NPCC)在压缩动态性能下的尺寸效果,使用3种不同的立方体尺寸的立方体混凝土试样用液压伺服等10种不同的装载应变率测量,并且NPCC的故障模式和压缩强度在不同的装载条件下进行比较和分析。基于对实验结果的比较分析,可以绘制以下结论:负载应变率的效果导致NPCC从静态应变率产生,主要是水泥水泥层损坏和均匀分布裂缝,在那里动态应变率作为主要裂缝分布是部分粗粗聚集的故障和倾斜裂缝。由于尺寸效果,压缩失效后大规模NPCC样本的完整性相对较高。随着载荷应变率的增加和立方体尺寸的降低,NPCC的抗压强度逐渐增加,并且随着载荷应变率的增加,对NPCC的机械性能的尺寸效应变得更加显着。此外,本文定量分析应变率和尺寸效应对NPCC抗压强度的影响,其机制深入讨论。研究结果对核电混凝土遏制的安全性具有重要意义。

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